Journal of Lightwave Technology · 2015 · 19 citations · 25 references
16-Core Fiber SpansBidirectional Signal AssignmentEngineeringCrosstalk ReductionFiber-optic CommunicationWdm Channels16-Core FiberPassive Optical NetworkOptical Wireless CommunicationOptical Fiber CommunicationRadio Over FiberFiber OpticsOptical CommunicationSpace Division MultiplexingGradual UpgradeOptical Networking
C-band and L-band wavelength division multiplexing (WDM) transmission performance was improved by using bidirectional signal assignment (BSA) to reduce crosstalk (XT) in square lattice structure 16-core fiber. Transmission of 16 WDM channels with 256-Gb/s polarization multiplexed-16 quadrature amplitude modulation signals on a 50-GHz grid with a net spectral efficiency of 4 b/s/Hz over 55-km of 16-core fiber spans was achieved. Use of BSA to reduce XT extended the transmission distance to 880 km in both types of transmission. Furthermore, transmission was achieved over eight mixed spans consisting of 16-core fiber and conventional single-mode fiber (SMF), demonstrating the possibility of gradually upgrading standard SMF-based lines to multicore fiber-based lines. With BSA, six 16-core fiber spans can be acceptable if the Q penalty from XT is below 0.5 dB.
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Penalties from In-Band Crosstalk for Advanced Optical Modulation Formats
Peter J. Winzer, A.H. Gnauck, A. Konczykowska et al. · 2011 · 180 citations
30×30 MIMO Transmission over 15 Spatial Modes
Nicolas K. Fontaine, Roland Ryf, Haoshuo Chen et al. · 2015 · 171 citations
Polarization Modes, Wireless Communications, Engineering +16